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Hierarchical nesting of slow oscillations, spindles and ripples in the human hippocampus during sleep

During systems-level consolidation, mnemonic representations initially reliant on the hippocampus are thought to migrate to neocortical sites for more permanent storage, with an eminent role of sleep for facilitating this information transfer. Mechanistically, consolidation processes have been hypot...

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Autores principales: Staresina, Bernhard P., Bergmann, Til Ole, Bonnefond, Mathilde, van der Meij, Roemer, Jensen, Ole, Deuker, Lorena, Elger, Christian E., Axmacher, Nikolai, Fell, Juergen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4625581/
https://www.ncbi.nlm.nih.gov/pubmed/26389842
http://dx.doi.org/10.1038/nn.4119
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author Staresina, Bernhard P.
Bergmann, Til Ole
Bonnefond, Mathilde
van der Meij, Roemer
Jensen, Ole
Deuker, Lorena
Elger, Christian E.
Axmacher, Nikolai
Fell, Juergen
author_facet Staresina, Bernhard P.
Bergmann, Til Ole
Bonnefond, Mathilde
van der Meij, Roemer
Jensen, Ole
Deuker, Lorena
Elger, Christian E.
Axmacher, Nikolai
Fell, Juergen
author_sort Staresina, Bernhard P.
collection PubMed
description During systems-level consolidation, mnemonic representations initially reliant on the hippocampus are thought to migrate to neocortical sites for more permanent storage, with an eminent role of sleep for facilitating this information transfer. Mechanistically, consolidation processes have been hypothesized to rely on systematic interactions between the three cardinal neuronal oscillations characterizing non-rapid-eye-movement sleep: Under global control of de- and hyperpolarizing slow oscillations (SOs), sleep spindles may cluster hippocampal ripples for a precisely timed transfer of local information to the neocortex. Here we used direct intracranial electroencephalogram (iEEG) recordings from human epilepsy patients during natural sleep to test the assumption that SOs, spindles and ripples are functionally coupled in the hippocampus. Employing cross-frequency phase-amplitude coupling analyses, we first show that spindles are modulated by the up-state of SOs. Critically, spindles were found to in turn cluster ripples in their troughs, providing fine-tuned temporal frames for the hypothesized transfer of hippocampal memory traces.
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spelling pubmed-46255812016-05-01 Hierarchical nesting of slow oscillations, spindles and ripples in the human hippocampus during sleep Staresina, Bernhard P. Bergmann, Til Ole Bonnefond, Mathilde van der Meij, Roemer Jensen, Ole Deuker, Lorena Elger, Christian E. Axmacher, Nikolai Fell, Juergen Nat Neurosci Article During systems-level consolidation, mnemonic representations initially reliant on the hippocampus are thought to migrate to neocortical sites for more permanent storage, with an eminent role of sleep for facilitating this information transfer. Mechanistically, consolidation processes have been hypothesized to rely on systematic interactions between the three cardinal neuronal oscillations characterizing non-rapid-eye-movement sleep: Under global control of de- and hyperpolarizing slow oscillations (SOs), sleep spindles may cluster hippocampal ripples for a precisely timed transfer of local information to the neocortex. Here we used direct intracranial electroencephalogram (iEEG) recordings from human epilepsy patients during natural sleep to test the assumption that SOs, spindles and ripples are functionally coupled in the hippocampus. Employing cross-frequency phase-amplitude coupling analyses, we first show that spindles are modulated by the up-state of SOs. Critically, spindles were found to in turn cluster ripples in their troughs, providing fine-tuned temporal frames for the hypothesized transfer of hippocampal memory traces. 2015-09-21 2015-11 /pmc/articles/PMC4625581/ /pubmed/26389842 http://dx.doi.org/10.1038/nn.4119 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Staresina, Bernhard P.
Bergmann, Til Ole
Bonnefond, Mathilde
van der Meij, Roemer
Jensen, Ole
Deuker, Lorena
Elger, Christian E.
Axmacher, Nikolai
Fell, Juergen
Hierarchical nesting of slow oscillations, spindles and ripples in the human hippocampus during sleep
title Hierarchical nesting of slow oscillations, spindles and ripples in the human hippocampus during sleep
title_full Hierarchical nesting of slow oscillations, spindles and ripples in the human hippocampus during sleep
title_fullStr Hierarchical nesting of slow oscillations, spindles and ripples in the human hippocampus during sleep
title_full_unstemmed Hierarchical nesting of slow oscillations, spindles and ripples in the human hippocampus during sleep
title_short Hierarchical nesting of slow oscillations, spindles and ripples in the human hippocampus during sleep
title_sort hierarchical nesting of slow oscillations, spindles and ripples in the human hippocampus during sleep
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4625581/
https://www.ncbi.nlm.nih.gov/pubmed/26389842
http://dx.doi.org/10.1038/nn.4119
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